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首页> 外文期刊>Nonlinear analysis. Hybrid systems: An International Multidisciplinary Journal >Input-output finite-time stabilization of impulsive linear systems: Necessary and sufficient conditions
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Input-output finite-time stabilization of impulsive linear systems: Necessary and sufficient conditions

机译:脉冲线性系统的输入输出有限时间稳定:必要条件和充分条件

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摘要

The main result of this paper consists of a pair of necessary and sufficient conditions for the input-output finite-time stability of impulsive linear systems. The former requires that an optimization problem, constrained by a coupled differential/difference linear matrix inequality (LMI), admits a feasible solution; the latter that the solution of a coupled differential/difference Lyapunov equation satisfies a constraint on the maximum eigenvalue. The first condition was already provided in Amato et al. (2011), where, however, only sufficiency was proven. The novel analysis condition (i.e. the one requiring the solution of the differential/difference Lyapunov equation) is shown to be more efficient from the computational point of view, while the result based on the differential/difference LMI is the starting point for the derivation of the design theorem. Some examples illustrate the benefits of the proposed technique. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文的主要结果包括对脉冲线性系统的输入输出有限时间稳定性的一对充要条件。前者要求一个优化问题(受耦合的差分/差分线性矩阵不等式(LMI)约束)允许可行的解决方案。后者是一个耦合的差分/差分Lyapunov方程的解满足对最大特征值的约束。 Amato等人已经提供了第一个条件。 (2011年),然而,只有充分证明。从计算的角度来看,这种新颖的分析条件(即需要求解差分/差分Lyapunov方程的条件)被证明是更有效的,而基于差分/差分LMI的结果是推导该差分分析的起点。设计定理。一些示例说明了所提出技术的好处。 (C)2015 Elsevier Ltd.保留所有权利。

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